Porto Thiago Soares, Roperto Renato Cassio, Teich Sorin Theodor, Faddoul Fady Fouad, Rizzante Fabio Antonio Piolla, Porto-Neto Sizenando de Toledo, Campos Edson Alves de
Case Western Reserve University, School of Dental Medicine, Department of Comprehensive Care, Cleveland, Ohio, USA.
Medical University of South Carolina, College of Dental Medicine, Department of Oral Rehabilitation, Charleston, South Carolina, USA.
Braz Oral Res. 2019;33:e026. doi: 10.1590/1807-3107bor-2019.vol33.0026. Epub 2019 Apr 4.
The aim of this study is to evaluate the machinability of four CAD/CAM materials (n = 13) assessed by brittleness index, Vickers hardness, and fracture toughness and interaction among such mechanical properties. The materials selected in this in vitro study are Feldspathic ceramic [FC], Lithium-disilicate glass ceramic [LD], leucite-reinforced glass ceramic [LR], and nanofilled resin material [RN]. Slices were made from the blocks following original dimensions 14 × 12 × 3 mm (L × W × H), using a precision slow-speed saw device and then surfaces were regularized through a polishing device. Brittleness index and fracture toughness were calculated by the use of specific equations for each one of the properties. The Vickers hardness was calculated automated software in the microhardness device. One-way Anova and Pearson's correlation were applied to data evaluation. LD obtained the highest values for brittleness index and was not significantly different from FC. LR presented statistically significant difference compared with RN, which had the lowest mean. Vickers hardness showed LD with the highest average, and no statistical difference was found between FC and LR. RN presented the lowest average. Fracture toughness showed FC and LR not statistically different from each other, likewise LD and RN. The brittleness index, considered also as the machinability of a material, showed within this study as positively dependent on Vickers hardness, which leads to conclusion that hardness of ceramics is related to its milling capacity. In addition, fracture toughness of pre-sintered ceramics is compared to polymer-based materials.
本研究的目的是评估四种CAD/CAM材料(n = 13)的可加工性,通过脆性指数、维氏硬度和断裂韧性以及这些力学性能之间的相互作用来评估。本体外研究中选择的材料为长石质陶瓷[FC]、二硅酸锂玻璃陶瓷[LD]、白榴石增强玻璃陶瓷[LR]和纳米填充树脂材料[RN]。按照原始尺寸14×12×3 mm(长×宽×高)从块状材料上切割切片,使用精密低速锯装置,然后通过抛光装置使表面平整。脆性指数和断裂韧性通过针对每种性能的特定方程计算得出。维氏硬度通过微硬度装置中的自动化软件计算得出。采用单向方差分析和皮尔逊相关性分析对数据进行评估。LD的脆性指数值最高,与FC无显著差异。与平均值最低的RN相比,LR呈现出统计学上的显著差异。维氏硬度显示LD的平均值最高,FC和LR之间未发现统计学差异。RN的平均值最低。断裂韧性显示FC和LR彼此之间无统计学差异,LD和RN也是如此。脆性指数,也被视为材料的可加工性,在本研究中显示出与维氏硬度呈正相关,这得出结论:陶瓷的硬度与其铣削能力相关。此外,还将预烧结陶瓷的断裂韧性与聚合物基材料进行了比较。